Bowman M K, Tyryshkin A M
Macromolecular Structure and Dynamics, Pacific Northwest National Laboratory, Richland, Washington 99352, USA.
J Magn Reson. 2000 May;144(1):74-84. doi: 10.1006/jmre.2000.2043.
Multiple resonance methods are important tools in EPR for revealing the network of hyperfine levels of free radicals and paramagnetic centers. The variations of electron nuclear double resonance (ENDOR) or electron spin-echo envelope modulation (ESEEM) techniques help to correlate nuclear frequencies with each other. These methods have limited utility when there is extensive overlap or suspected overlap in the EPR spectrum between different species or different orientations. In the ENDOR spectrum, overlap and second-order shifts of lines also leads to ambiguity in assignment and interpretation. A new electron nuclear multiple resonance method is presented here that is based on population transfer ENDOR. It is a quadruple resonance method that correlates ENDOR lines and reveals the network of hyperfine levels in samples with unoriented paramagnetic species and in samples with overlapping EPR or ENDOR lines.
多重共振方法是电子顺磁共振(EPR)中用于揭示自由基和顺磁中心超精细能级网络的重要工具。电子-核双共振(ENDOR)或电子自旋回波包络调制(ESEEM)技术的变化有助于将核频率相互关联。当不同物种或不同取向之间的EPR谱存在广泛重叠或疑似重叠时,这些方法的效用有限。在ENDOR谱中,谱线的重叠和二阶位移也会导致归属和解释的模糊性。本文提出了一种基于布居转移ENDOR的新的电子-核多重共振方法。它是一种四重共振方法,可关联ENDOR谱线,并揭示具有无定向顺磁物种的样品以及具有重叠EPR或ENDOR谱线的样品中的超精细能级网络。